Calculate the power required to pump the water if the fluid flow is turbulent. Note that the friction factor for turbulent flow in a smooth circular pipe is f = 0.79 Re-025. Provide your answer to 1 decimal place. Assuming that the pipe flow is turbulent, how much pumping power would be required to transport the water up an incline with an elevation head of Z₁ Z₂ = -10m? Choose from the following, rounding your answer to the nearest kW: O 5 kW Q10 kW O 1 kW Q2kW

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Calculate the power required to pump the water if the fluid flow is turbulent. Note that the friction factor for turbulent
flow in a smooth circular pipe is f = 0.79 Re-025. Provide your answer to 1 decimal place.
Assuming that the pipe flow is turbulent, how much pumping power would be required to transport the water up an
incline with an elevation head of Z₁ Z₂ = -10m? Choose from the following, rounding your answer to the nearest
kW:
O 5 kW
O 10 kW
O 1 kW
O 2 kW
Transcribed Image Text:Calculate the power required to pump the water if the fluid flow is turbulent. Note that the friction factor for turbulent flow in a smooth circular pipe is f = 0.79 Re-025. Provide your answer to 1 decimal place. Assuming that the pipe flow is turbulent, how much pumping power would be required to transport the water up an incline with an elevation head of Z₁ Z₂ = -10m? Choose from the following, rounding your answer to the nearest kW: O 5 kW O 10 kW O 1 kW O 2 kW
Water is pumped through a horizontal, smooth circular pipe at a bulk velocity of 0.4 m/s. The pipe has an internal diameter
of 250 mm and a total length of 1600 m. The pipe flow is fully-developed. The shear viscosity of the water is 1 mPa.s.
Transcribed Image Text:Water is pumped through a horizontal, smooth circular pipe at a bulk velocity of 0.4 m/s. The pipe has an internal diameter of 250 mm and a total length of 1600 m. The pipe flow is fully-developed. The shear viscosity of the water is 1 mPa.s.
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